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Development of a Low-Cost Arduino-Based Sonde for Coastal Applications

机译:针对沿海应用的低成本基于Arduino的主机的开发

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摘要

This project addresses the need for an expansion in the monitoring of marine environments by providing a detailed description of a low cost, robust, user friendly sonde, built on Arduino Mega 2560 (Mega) and Arduino Uno (Uno) platforms. The sonde can be made without specialized tools or training and can be easily modified to meet individual application requirements. The platform allows for internal logging of multiple parameters of which conductivity, temperature, and GPS position are demonstrated. Two design configurations for different coastal hydrographic applications are highlighted to show the robust and versatile nature of this sensor platform. The initial sonde design was intended for use on a Lagrangian style surface drifter that recorded measurements of temperature; salinity; and position for a deployment duration of less than 24 h. Functional testing of the sensor consisted of a 55 h comparison with a regularly maintained water quality sensor (i.e., YSI 6600 sonde) in Mobile Bay, AL. The temperature and salinity data were highly correlated and had acceptable RMS errors of 0.154 °C and 1.35 psu for the environmental conditions. A second application using the sonde platform was designed for longer duration (~3–4 weeks); subsurface (1.5–4.0 m depths) deployment, moored to permanent structures. Design alterations reflected an emphasis on minimizing power consumption, which included the elimination of the GPS capabilities, increased battery capacity, and power-saving software modifications. The sonde designs presented serve as templates that will expand the hydrographic measurement capabilities of ocean scientists, students, and teachers.
机译:该项目通过提供基于Arduino Mega 2560(Mega)和Arduino Uno(Uno)平台的低成本,健壮,用户友好的主机的详细说明,满足了扩展海洋环境监控需求。主机可以在没有专门工具或培训的情况下进行制造,并且可以轻松修改以满足个别应用需求。该平台允许内部记录多个参数,这些参数已演示了电导率,温度和GPS位置。着重介绍了针对不同沿海水文应用的两种设计配置,以显示该传感器平台的坚固性和通用性。最初的探空仪设计旨在用于记录温度测量值的拉格朗日式表面漂移器;盐度;部署时间少于24小时。传感器的功能测试包括与阿拉巴马州莫比尔湾定期维护的水质传感器(即YSI 6600探空仪)进行55小时的比较。温度和盐度数据高度相关,在环境条件下的均方根误差为0.154°C和1.35 psu。使用Sonde平台的第二个应用程序设计了更长的时间(约3-4周)。地下(1.5-4.0 m深度)展开,系泊在永久性结构上。设计变更反映了对降低功耗的重视,其中包括取消了GPS功能,增加了电池容量以及对节能软件进行了修改。提出的探空仪设计用作模板,将扩展海洋科学家,学生和教师的水文测量能力。

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